Zhang P, Canessa C M
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520, USA.
J Gen Physiol. 2001 Jun;117(6):563-72. doi: 10.1085/jgp.117.6.563.
The acid-sensitive ion channels known as ASIC are gated by external protons. A set of these channels is expressed in dorsal root ganglion neurons where they may participate in the transduction of mechanical and nociceptive stimuli. Here, we have examined the single-channel properties of channels formed by the subunits ASIC2 and ASIC3 expressed in Xenopus oocytes using outside-out patches. The mean single-channel current-voltage relationship is linear with a slope conductance of 18 pS between -80 and -40 mV in 150 mM Na(+) outside and 150 mM K(+) inside the patch pipet. The selectivity for monovalent cations has the sequence Na(+) > Li(+) > K(+). Divalent cations such as Ca(2+) do not permeate, but instead block the channel when applied to the extracellular side. External protons increase the probability of channels being open to a maximum of 0.8 with an EC(50) of 16 +/- 4 microM and a Hill coefficient of 2.7 +/- 0.3, whereas the mean single-channel current amplitude is independent of external pH. Analysis of the kinetics of single channels indicates the presence of at least four modes of activity (Mod1 to Mod4) in addition to an inactivated state. Three of the modes exhibit distinct kinetics, and can be unambiguously identified on the basis of open probability (P(oMod1) = 0.5 +/- 0.05; P(oMod2) > 0.9 +/- 0.05; P(oMod3) < 0.1). Mode 4, which has a P(o) in the range of 0.5-0.8, may constitute a distinct mode or alternatively, it represents transitions between the other three modes of activity. Increasing H(+) increases the frequency of entering the modes with high P(o) (modes 1, 2, and 4) and the time the channel spends in the modes with high activity.
被称为ASIC的酸敏感离子通道由细胞外质子门控。其中一组这样的通道在背根神经节神经元中表达,它们可能参与机械和伤害性刺激的转导。在这里,我们使用外向膜片在非洲爪蟾卵母细胞中表达的ASIC2和ASIC3亚基形成的通道的单通道特性进行了研究。在膜片移液管内为150 mM K⁺且外部为150 mM Na⁺时,平均单通道电流 - 电压关系呈线性,在 - 80至 - 40 mV之间的斜率电导为18 pS。单价阳离子的选择性顺序为Na⁺>Li⁺>K⁺。二价阳离子如Ca²⁺不渗透,而是在应用于细胞外侧时阻断通道。外部质子将通道开放的概率增加到最大值0.8,EC₅₀为16±4 μM,希尔系数为2.7±0.3,而平均单通道电流幅度与外部pH无关。单通道动力学分析表明,除了失活状态外,至少存在四种活动模式(模式1至模式4)。其中三种模式表现出不同的动力学,并且可以根据开放概率明确识别(P(oMod1)= 0.5±0.05;P(oMod2)> 0.9±0.05;P(oMod3)< 0.1)。模式4的P(o)在0.5 - 0.8范围内,可能构成一种独特的模式,或者它代表其他三种活动模式之间的转变。增加[H⁺]ₒ会增加进入高P(o)模式(模式1、2和4)的频率以及通道在高活性模式中停留的时间。